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Updated: Apr 21, 2026

Optimized Protocol for the Extraction of Proteins from the Human Mitral Valve
Published on: June 14, 2017
Proteomic analysis of human plasma in chronic rheumatic mitral stenosis reveals proteins involved in the complement
Somaditya Mukherjee1, Mashanipalya G Jagadeeshaprasad2, Tanima Banerjee1
1Cell Biology and Physiology Division, CSIR-Indian Institute of Chemical Biology, 4 Raja S. C. Mullick Road, Kolkata, 700032 India.
Insights
This study identified a unique protein profile in the plasma of individuals with Rheumatic Mitral Stenosis, highlighting inflammation and immune response proteins. These findings may lead to new diagnostic biomarkers for this heart condition.
Area of Science:
- Cardiovascular Proteomics
- Biomarker Discovery
- Rheumatic Heart Disease Research
Background:
- Rheumatic fever is a leading cause of Mitral Stenosis in developing nations, causing valve damage and heart failure.
- Current diagnosis relies on echocardiography, lacking biochemical markers for prediction, diagnosis, or management.
- A proteomic approach is needed to understand Rheumatic Mitral Stenosis mechanisms.
Purpose of the Study:
- To investigate plasma proteomic differences in patients with Rheumatic Mitral Stenosis compared to controls.
- To identify potential protein biomarkers for the diagnosis and prognosis of Rheumatic Mitral Stenosis.
Main Methods:
- Plasma proteomics using nano LC-MS(E) on samples from 6 Rheumatic Mitral Stenosis patients and 6 controls.
- Low abundance protein enrichment and in-solution trypsin digestion.
- Label-free protein quantification and data analysis against the Homo sapiens database.
Main Results:
- Identified 130 proteins, with 34 differentially regulated between groups.
- Over 50% of identified proteins are involved in inflammation and immune response.
- Findings were supported by pathway analysis and histopathological studies, with immunotechnique verification.
Conclusions:
- The identified plasma protein profile may offer insights into Mitral Stenosis mechanisms.
- Individual proteins or the profile could serve as candidate biomarkers for diagnosis and prognosis.
- This research can enhance understanding of molecular mechanisms and improve diagnostic tools for Mitral Stenosis.
Background:
Rheumatic fever in childhood is the most common cause of Mitral Stenosis in developing countries. The disease is characterized by damaged and deformed mitral valves predisposing them to scarring and narrowing (stenosis) that results in left atrial hypertrophy followed by heart failure. Presently, echocardiography is the main imaging technique used to diagnose Mitral Stenosis. Despite the high prevalence and increased morbidity, no biochemical indicators are available for prediction, diagnosis and management of the disease. Adopting a proteomic approach to study Rheumatic Mitral Stenosis may therefore throw some light in this direction. In our study, we undertook plasma proteomics of human subjects suffering from Rheumatic Mitral Stenosis (n = 6) and Control subjects (n = 6). Six plasma samples, three each from the control and patient groups were pooled and subjected to low abundance protein enrichment. Pooled plasma samples (crude and equalized) were then subjected to in-solution trypsin digestion separately. Digests were analyzed using nano LC-MS(E). Data was acquired with the Protein Lynx Global Server v2.5.2 software and searches made against reviewed Homo sapiens database (UniProtKB) for protein identification. Label-free protein quantification was performed in crude plasma only.
Results:
A total of 130 proteins spanning 9-192 kDa were identified. Of these 83 proteins were common to both groups and 34 were differentially regulated. Functional annotation of overlapping and differential proteins revealed that more than 50% proteins are involved in inflammation and immune response. This was corroborated by findings from pathway analysis and histopathological studies on excised tissue sections of stenotic mitral valves. Verification of selected protein candidates by immunotechniques in crude plasma corroborated our findings from label-free protein quantification.
Conclusions:
We propose that this protein profile of blood plasma, or any of the individual proteins, could serve as a focal point for future mechanistic studies on Mitral Stenosis. In addition, some of the proteins associated with this disorder may be candidate biomarkers for disease diagnosis and prognosis. Our findings might help to enrich existing knowledge on the molecular mechanisms involved in Mitral Stenosis and improve the current diagnostic tools in the long run.
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